BACKGROUND OF THE INVENTION
1. Field of the invention
[0001] The present invention relates to a robotized tranfer system for containers or magazines
having different configurations utilized in semiconductor device production lines.
2. Description of the prior art
[0002] The production of integrated circuits or more generally semiconductor integrated
devices is an example of very large scale fabrication and widely exploits, for obvious
cost abatment considerations, highly automatized production lines exploiting selfpropelled
robots for handling and transferring the components being assembled. Normally these
components have relatively small dimensions and/or are relatively fragile mechanically
and it is a common practice for automatically handling and transferring them to employ
specific magazines capable of containing a certain number of pieces in an orderly
and safe way. These magazines have shapes and dimensions necessarily very different
among each other, each being specifically designed and constructed for transporting
objects and component parts very much dissimilar from one another: such as for example
wafers, metal frames for assemblying the dies, stamped strips or ribbons of lead frames,
etc.. For these reasons, the robots for handling and transferring these magazines
along the production line must be specifically equipped for handling a certain type
of magazine, and this often requires the substitution of the pick-up pincers at the
extremity of a mobile arm thereof.
[0003] Typical magazines for wafers and for metal frames are respectively shown in Figures
1 and 2. Commonly these magazines are made of plastic or metallic material and are
provided with two external lateral grooves 1 and 2 along the upper rim of the magazine,
wherein the two jaws of the pick-up pincers of the mobile arm of the transfer robot
exert their grip. As it is easily understandable from the figures, the shapes and
dimensions of the magazines which are often much dissimilar among each other, entail
the use of special pincers or the substitution of one type of pincers with another
type suitable for the particular type of magazine to be handled next. Another drawback
is represented by the fact that the pick-up pincers necessarily present a substantially
larger encumbrance than the magazine itself (at least in the direction of action of
the jaws of the pincers) and this may represent a problem for handling these magazines
within recesses, e.g. for depositing the magazine in a preordered location on a machine
or on a testing apparatus or for permitting an easy arraying of several magazines
one against the other within a "buffer" housing or platform.
OBJECTIVES AND SUMMARY OF THE INVENTION
[0004] In view of this state of the art, the present invention provides an automatic handling
and transfer system employing the same type of selfpropelled robots and by which all
the robots may have a substantially identical configuration and therefore be immediately
interexchangeable without needing to modify their pick-up mechanism in function of
the particular type of container or magazine to be handled. This is achieved, in accordance
with the present invention, by employing a standarized pick-up mechanism for all kinds
of containers and/or magazines which are used in the production lines and by providing
each magazine with an identification bar code which is geometrically located in a
fixed spatial position in respect to the pick-up implements receiving recesses or
grooves present on the magazine structure. In this way, while the pick-up implements
of the mobile arm of anyone robot are indifferently suitable to pick-up any type of
magazine, as long as the latter is provided with such a standarized pick-up implements
receiving means, said identification bar code which is read after every pick-up by
a bar code reader present in a fixed location on the robot structure and to which
location the picked-up magazine is presented by the same mobile arm of the robot,
determines either the deposition of the picked-up magazine on a respective transfer
buffer platform among the many platforms which are present on the selfpropelled robot
or on an allocated load platform on a test machine or else of the production line.
[0005] Advantageously the standarized pick-up implements receiving recesses of any magazine
is configured so as to cooperate with expansion type pick-up "pincers" and the pick-up
terminal or head of the mobile arm is able to access from above and intrude into a
space substantially confined within the overall plan view dimensions of the magazine
itself, thus avoiding that the pick-up terminal of the mobile arm project beyond the
encumbrance profile of the magazine itself. This greatly facilitates and renders the
handling more efficient.
BRIEF DESCRIPTION OF THE DRAWINGS
[0006] The different aspects and advantages of the invention will become evident through
the following detailed description of an embodiment thereof and with reference to
the appended drawings, wherein:
Fig. 1 is a schematic perspective view of a transfer magazine for handling wafers, in accordance
with a known technique;
Fig. 2 is a perspective, schematic view of a transfer magazine for handling strips of stamped
metal frames, according to the same known technique;
Fig. 3 is a perspective, schematic view of a transfer magazine for handling wafers, made
in accordance with the present invention;
Fig. 4 is a perspective, schematic view of a transfer magazine for handling strips of stamped
metal frames, made in accordance with the present invention;
Fig. 5 is a schematic, partially sectioned, elevation view of the extremity of a mobile
arm of a transfer robot and of the pick-up implements used in accordance with the
present invention;
Fig. 6 is a schematic, partially sectioned, elevation view showing a magazine being deposited
on a specific trasfer buffer platform by the robot's mobile arm, in accordance with
the present invention;
Fig. 7 is a schematic, perspective view of a transfer robot utilized in the system of the
present invention.
[0007] As already said, Figures 1 and 2 show two common types of transfer magazines used
in known systems, respectively for wafers 3 in Fig. 1 and for strips of stamped metal
frames 4 in Fig. 2. Commonly these magazines are formed by two opposed, grooved plates
5 and 6, joined together by a spacing cross beam 7 (Fig. 1) or by a pair of spacing
pins 7' (Fig. 2). The grooves present on the opposed internal faces of the two plates
form as many supports shelves for the wafers 3, in the case of the specific magazine
of Fig. 1, or for the strips of stamped metal frames 4, in the case of the magazine
of Fig. 2. According to a known technique, along the upper edges of the magazines
and on the external faces of the two opposed plates thereof, the longitudinal grooves
1 and 2 are formed and which provide the seats into which the tips of the jaws of
the pick-up pincers, mounted at the extremity of the mobile arm of a transfer robot
(not shown in the figures) exert their gripping action.
DESCRIPTION OF THE PREFERRED EMBODIMENT
[0008] Containers or magazines for wafers and for strips of stamped metal frames, functionally
equivalent to those of the prior art depicted in Figures 1 and 2, are shown in Figures
3 and 4, respectively. The same numbers are used for identifying substantially similar
parts of the magazines. The pick-up implements receving recesses of the magazines
of the system of the invention are, in the examples shown, constituted by two pairs
of opposed seats, respectively 8a, 8b and 9a, 9b, which, in the case shown, are two
pairs of reciprocally coaxial holes longitudinally, spaced apart by a distance
X and wherein the coaxial holes of each pair are spaced apart from one another by a
distance
Y, as shown in the figures. The
Y distance may, as in the case shown, correspond to the distance of separation between
the opposing side plates 6 and 5 of the magazine of Fig. 4, designed for handling
strips of stamped metal frames 4, and this separating distance between the opposed
holes of each pair is kept also for the case of the magazine depicted in Fig. 3, designed
for handling wafers, which is necessarily wider than the former magazine of Fig. 4.
This is achieved by forming a functionally appropriate carrying structure of the magazine
which comprises the two spaced cross beams 7 connecting the two side plates 5 and
6 and also two longitudinal members 10a and 10b, parallel to each other and spaced
by a distance
Y, through which the two longitudinally spaced apart pairs of pick-up holes 8a, 8b
and 9a, 9b are formed.
[0009] Of course these pick-up implements receiving means present on the magazines and assuming
the general aspect of longitudinally spaced pairs of opposing holes or recesses, will
be geometrically identical for any type of magazine utilized in the handling and transfer
system and preferably their spatial position will be substantially centered about
the center of gravity of the magazine.
[0010] In any case, the opposing surfaces on which said pairs of holes are formed define
a space which is accessible from above by an expansion pick-up head, the outer profile
of which remains substantially contained within the outer profile of the magazine
being handled, in a plan-wise view.
[0011] The engagement action of the expansion "pincers" is shown schematically in Figures
5 and 6, which show how the picking-up by the mobile arm 11 of a transfer robot of
a magazine takes place. The pick-up head 12 is a sort of expansion pincers provided
with as many pairs of projectable and retractable coaxial pins 13 and 14 as many are
the spaced pairs of opposed coaxial holes in the magazine. The pins are capable of
being projected from a retracted position shown in Fig. 5 to a fully extended pick-up
position shown in Fig. 6, wherein the two pins 13 and 14 forming one of said pairs
engage the respective seats formed by one pair of coaxial holes present in the magazine,
as described in Figures 3 and 4, and vice-versa. These expansion "pincers" permit,
in respect to normal pincers, to contain the encumbrance thereof within the overall
encumbrance of the magazine itself, thus permitting to position a picked-up magazine
directly against a wall 15, as schematically depicted in Fig. 5, or a previously deposited
magazine on a resting buffer platform 16, as schematically depicted in Fig. 6.
[0012] A handling and transfer system made in accordance with the present invention is schematically
depicted in Fig. 7. A selfpropelled robot used by the system is generally indicated
with 17. The robot is provided with a central guidance unit 18 and is provided with
a mobile arm generally indicated with 11. The mobile arm is provided at its extremity
with an expansion type pick-up head 12 for picking-up the magazines, as shown in the
preceding Figures 5 and 6. Moreover the self propelled robot is provided, in a relatively
fixed position, with a bar code reader 19 and with a certain number of housings or
platforms (20, 21, 22, 23 and 24) each of which is specifically prearranged for accommodating
a certain number of a specific type of magazines to be transferred, as schematically
shown in Fig. 7. Every magazine has the same standarized pick-up implements accommodating
recesses as shown in detail in Figures 3 and 4 and a bar code which is placed in a
spatially univocal position in respect to said standarized pick-up means present thereon.
[0013] After each pick-up, the magazine is presented automatically by the mobile arm 11
in a position so as to permit the reading of the bar code by the reader 19. This determines
the type of magazine being handled by the mobile arm and, in function of a guidance
program, authorizes the deposition of the so-recognized magazine in the specific area
or buffer platform (20, 21, 22, 23 or 24) present on the selfpropelled robot.
[0014] It is evident how the system object of the present invention is advantageously free
of the drawbacks and limitations of the known systems, thus fully matching the stated
objectives.
[0015] As it will be evident to the skilled technician, the conformation of the standarized
pick-up implements receiving means present on the transfer magazines may be modified
or realized in other forms. In particular the presence of at least two spaced pairs
of opposing holes or recesses is not necessary, being a single pair of recesses having
a suitable poligonal cross section so as to determine a stable pick-up condition sufficient,
or more than two pairs of opposed holes or recesses may be used while utilizing a
cooperating expansion type pick-up head provided with a matching array of expandable
pins.
1. A robotized handling and transfer system of magazines of different configuration for
semiconductor device production lines comprising at least a magazine, a selfpropelled
robot having a plurality of transfer platforms for respectively different types of
magazines to be transferred, at least a mobile arm terminating with pick-up implements
and a bar code reader for reading a bar code affixed on a surface of said magazines,
characterized by the fact that each magazine to be handled is provided with standarized
pick-up implements receiving means which comprise at least a pair of opposed seats
(8a,8b,9a,9b) formed respectively on two spaced apart, opposite vertical surfaces
of the magazine, which surfaces define a space therebetween which is accessible from
above by a pick-up head (12) of said mobile arm having projectable and retractable
pick-up pins (13,14) capable of engaging themselves in said opposed seats on said
opposite, vertical surfaces of the magazine when in a projected position; the magazine
being provided with an identification bar code affixed in a geometrically univocal
spatial position in respect to said opposed pick-up pins receiving seats.
2. The system in accordance with claim 1, wherein said standarized pick-up implements
receiving means are two longitudinally spaced apart pairs of opposed coaxial holes
which are formed in said spaced apart, opposite, vertical surfaces of the magazine.
1. Automatisches Handhabungs- und Transfersystem für unterschiedlichen Aufbau aufweisende
Magazine für Fertigungsstraßen von Halbleiterbauelementen, umfassend mindestens ein
Magazin, einen mit Eigenantrieb versehenen Roboter, der mehrere Transferplattformen
für die jeweils verschiedenen Typen von zu transferierenden Magazinen, mindestens
einen mobilen Arm, der mit Aufnahmeelementen abschließt, und einen Strichkodeleser
zum Lesen eines an einer Fläche der Magazine befestigten Strichkodes aufweist, gekennzeichnet
durch den Umstand, daß jedes zu handhabende Magazin mit genormten Aufnahmeelement-Aufnehmermitteln
versehen ist, die mindestens ein Paar sich gegenüberliegender Sitze (8a, 8b, 9a, 9b)
aufweisen, die an zwei mit Abstand voneinander angeordeten vertikalen Flächen des
Magazins ausgebildet sind, welche Flächen zwischen sich einen Raum definieren, auf
den von oben her durch einen Aufnahmekopf (12) des mobilen Arms zugreifbar ist, wobei
der mobile Arm ausfahrbare und zurückziehbare Aufnahmestifte (13, 14) besitzt, die
in die sich gegenüberliegenden Sitze an den sich gegenüberliegenden vertikalen Flächen
des Magazins eingreifen können, wenn sie sich in einer ausgefahrenen Stellung befinden;
wobei das Magazin mit einem Identifikations-Strichkode ausgestattet ist, der in einer
geometrisch eindeutigen räumlichen Position bezüglich der sich gegenüberliegenden
Aufnahmestift-Aufnehmersitze befestigt ist.
2. System nach Anspruch 1, bei dem die genormten Aufnahmeelement-Aufnehmermittel zwei
in Längsrichtung beabstandete Paare von sich gegenüberliegenden koaxialen Löchern
sind, die in den voneinander beabstandeten, sich gegenüberliegenden vertikalen Flächen
des Magazins ausgebildet sind.
1. Système de manipulation et de transfert robotisé de magasins de configurations différentes
pour chaîne de fabrication de dispositifs semiconducteurs comprenant au moins un magasin,
un robot auto-propulsé muni d'une pluralité de plates-formes de transfert pour des
types respectivement différents de magasins à transférer, au moins un bras mobile
se terminant par des éléments de préhension, et un lecteur de code barre pour lire
un code barre apposé sur une surface des magasins, caractérisé en ce que chaque magasin
à manipuler est muni de moyens de réception d'éléments de préhension standardisés
qui ccmprennent au moins une paire de sièges opposés (8a, 8b, 9a, 9b) formés respectivement
sur deux surfaces verticales opposées espacées du magasin, ces surfaces définissant
entre elles un espace qui est accessible à partir du haut par une tête de préhension
(12) du bras mobile ayant des broches de préhension (13, 14) pouvant être mises en
extension ou être rétractées capables de pénétrer dans les sièges opposés sur les
surfaces opposées verticales du magasin quand elles sont dans la position en extension,
le magasin étant muni d'un code barre d'identification apposé à une position spatiale
géométriquement univoque par rapport aux sièges recevant les broches de préhension
opposées.
2. Système selon la revendication 1, dans lequel les moyens de réception d'éléments de
préhension standardisés sont deux paires espacées longitudinalement de trous coaxiaux
opposés qui sont formés dans les surfaces verticales opposées espacées du magasin.